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首页> 外文期刊>Nuclear Technology >Coupled Computational Fluid Dynamics-Discrete Element Method Study of Bypass Flows in a Pebble Bed Reactor
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Coupled Computational Fluid Dynamics-Discrete Element Method Study of Bypass Flows in a Pebble Bed Reactor

机译:耦合计算流体动力学 - 离散元素方法研究卵石床反应器中的旁路流动

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摘要

In the high-temperature reactor design, it is common practice to leave gaps between the graphite blocks of the reflectors to accommodate thermal dilatation and material swelling, as well as to provide an additional cooling source during operation. These gaps give rise to bypass flows entering the reactor core. The bypass flows can change friction factors and heat exchange coefficients obtained in the bulk of the pebble bed. In this paper, a coupled computational fluid dynamics-discrete element method (CFD-DEM) model is proposed. In this model, the pebbles are resolved by the CFD grid and the turbulent field is partially captured using a detached eddy simulation method. The DEM model is first validated against empirical correlations for the packing of the pebbles, and the coupled model is then tested against thermal measurements in the SANA experiment. Then the model is used to perform three-dimensional studies of the effects of the bypass flows in a representative pebble bed configuration. It is determined that the effect of cross flows can be approximately bounded to the first two layers of pebbles next to the reflector wall. Additionally, an increase of ~12% in the Nusselt number in the pebbles next to the reflector is predicted, with a maximum local increase in the pebble of ~ 100%.
机译:在高温反应器设计中,常见的做法是在反射器的石墨块之间留下间隙以适应热扩张和材料膨胀,以及在操作期间提供额外的冷却源。这些差距引起进入电抗器核心的旁路流动。旁路流动可以改变在卵石床的大部分中获得的摩擦因子和热交换系数。本文提出了一种耦合计算流体动力学 - 离散元件(CFD-DEM)模型。在该模型中,通过分离的涡流模拟方法,通过CFD网格解析鹅卵石,湍流场被部分捕获。首先验证DEM模型针对鹅卵石包装的经验相关性,然后在佐萨实验中进行耦合模型。然后,该模型用于执行旁路流动在代表性卵石床配置中的效果的三维研究。确定交叉流的效果可以近似地界定到反射壁旁边的前两层卵石。另外,预测了反射器旁边的卵石中的卵泡数量的〜12%的增加,最大局部增加了〜100%的鹅卵石。

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